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DFT study of adsorption of hydrogen and carbon monoxide on Pt_xBi_(1-x)Pt(111) bimetallic overlayers: correlation to surface electronic properties

机译:DFT研究Pt_xBi_(1-x)Pt(111)双金属覆盖层上氢和一氧化碳的吸附:与表面电子特性的关系

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Analysis of the electronic properties of Pt_xBi_(1-x)/Pt(111) bimetallic overlayers was performed by DFT calculation. The positions of the d-band centers and band widths were correlated using a triangular band model. In addition, the adsorption of hydrogen atoms as well as CO tolerance of selected Pt_xBi_(1-x)/Pt(111) bimetallic overlayers were analysed. Excellent correlation was obtained of the adsorption energies of H and CO with d-band centers of platinum atoms on the studied surfaces. The red shift of Pt-H stretching vibration of adsorbed hydrogen, and decrease of work function upon adsorption of H were predicted. Analysis of hydrogen and CO chemisorption by means of the difference of the projected density of states was performed in order to identify d-states involved in bonding. The results obtained by calculations Were compared with the experimental ones, where available.
机译:通过DFT计算对Pt_xBi_(1-x)/ Pt(111)双金属叠层板的电子性能进行了分析。 d带中心的位置和带宽使用三角带模型进行关联。此外,分析了氢原子的吸附以及所选Pt_xBi_(1-x)/ Pt(111)双金属叠层膜的CO耐受性。在研究的表面上,H和CO的吸附能与d原子的铂原子中心具有极好的相关性。预测了吸附氢的Pt-H拉伸振动的红移和H吸附后功函数的下降。进行氢和一氧化碳化学吸附的分析,是通过预测状态密度的差异来进行的,以便确定参与键合的d状态。通过计算获得的结果与实验结果进行了比较(如果有)。

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